Get detailed and reliable answers to your questions with IDNLearn.com. Our community provides timely and precise responses to help you understand and solve any issue you face.
Sagot :
To determine the correctly balanced equation for the formation of ammonia from hydrogen and nitrogen, we need to look at the reaction between hydrogen gas ([tex]$H_2$[/tex]) and nitrogen gas ([tex]$N_2$[/tex]).
The balanced chemical equation ensures that the number of atoms of each element is the same on both the reactant and product sides of the equation. Let's consider the chemical equation for the formation of ammonia:
[tex]\[ \text{Unbalanced Equation:} \quad H_2 + N_2 \rightarrow NH_3 \][/tex]
1. Count the atoms on both sides of the unbalanced equation:
[tex]\[ \text{Left side:} \quad H: 2, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 3, \quad N: 1 \][/tex]
2. Balance the nitrogen atoms:
Add a coefficient of 2 in front of [tex]$NH_3$[/tex] to balance the number of nitrogen atoms:
[tex]\[ H_2 + N_2 \rightarrow 2NH_3 \][/tex]
3. Count the atoms again after updating:
[tex]\[ \text{Left side:} \quad H: 2, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 6, \quad N: 2 \][/tex]
4. Balance the hydrogen atoms:
Add a coefficient of 3 in front of [tex]$H_2$[/tex]:
[tex]\[ 3H_2 + N_2 \rightarrow 2NH_3 \][/tex]
5. Recheck the atom count for full equation balance:
[tex]\[ \text{Left side:} \quad H: 6, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 6, \quad N: 2 \][/tex]
The balanced chemical equation that represents the formation of ammonia is:
[tex]\[ 3H_2 + N_2 \rightarrow 2NH_3 \][/tex]
Therefore, the correct option is C.
The balanced chemical equation ensures that the number of atoms of each element is the same on both the reactant and product sides of the equation. Let's consider the chemical equation for the formation of ammonia:
[tex]\[ \text{Unbalanced Equation:} \quad H_2 + N_2 \rightarrow NH_3 \][/tex]
1. Count the atoms on both sides of the unbalanced equation:
[tex]\[ \text{Left side:} \quad H: 2, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 3, \quad N: 1 \][/tex]
2. Balance the nitrogen atoms:
Add a coefficient of 2 in front of [tex]$NH_3$[/tex] to balance the number of nitrogen atoms:
[tex]\[ H_2 + N_2 \rightarrow 2NH_3 \][/tex]
3. Count the atoms again after updating:
[tex]\[ \text{Left side:} \quad H: 2, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 6, \quad N: 2 \][/tex]
4. Balance the hydrogen atoms:
Add a coefficient of 3 in front of [tex]$H_2$[/tex]:
[tex]\[ 3H_2 + N_2 \rightarrow 2NH_3 \][/tex]
5. Recheck the atom count for full equation balance:
[tex]\[ \text{Left side:} \quad H: 6, \quad N: 2 \][/tex]
[tex]\[ \text{Right side:} \quad H: 6, \quad N: 2 \][/tex]
The balanced chemical equation that represents the formation of ammonia is:
[tex]\[ 3H_2 + N_2 \rightarrow 2NH_3 \][/tex]
Therefore, the correct option is C.
We greatly appreciate every question and answer you provide. Keep engaging and finding the best solutions. This community is the perfect place to learn and grow together. Accurate answers are just a click away at IDNLearn.com. Thanks for stopping by, and come back for more reliable solutions.